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喷射冷却乙烯基自由基的高分辨率红外光谱:对称CH₂伸缩振动激发与隧穿动力学

High-resolution infrared spectroscopy of jet-cooled vinyl radical: symmetric CH2 stretch excitation and tunneling dynamics.

作者信息

Dong Feng, Roberts Melanie, Nesbitt David J

机构信息

JILA, National Institute of Standards and Technology and Department of Chemistry and Biochemistry, University of Colorado, Boulder, Colorado 80309, USA.

出版信息

J Chem Phys. 2008 Jan 28;128(4):044305. doi: 10.1063/1.2816704.

Abstract

First high-resolution IR spectra of jet-cooled vinyl radical in the C-H stretch region are reported. Detailed spectral assignments and least squares fits to an A-reduction Watson asymmetric top Hamiltonian yield rotational constants and vibrational origins for three A-type bands, assigned to single quantum excitation of the symmetric CH(2) stretch. Two of the observed bands arise definitively from ground state vinyl radical, as rigorously confirmed by combination differences predicted from previous midinfrared CH(2) wagging studies of Kanamori et al. [J. Chem. Phys. 92, 197 (1990)] as well as millimeter wave rotation-tunneling studies of Tanaka et al. [J. Chem. Phys. 120, 3604 (2004)]. The two bands reflect transitions out of symmetric (0(+)) and antisymmetric (0(-)) tunneling levels of vinyl radical populated at 14 K slit-jet expansion temperatures. The band origins for the lower-lower (0(+)<--0(+)) and upper-upper (0(-)<--0(-)) transitions occur at 2901.8603(7) and 2901.9319(4) cm(-1), respectively, which indicates an increase in the tunneling splitting and therefore a decrease in the effective tunneling barrier upon CH(2) symmetric stretch excitation. The third A-type band with origin at 2897.2264(3) cm(-1) exhibits rotational constants quite close to (but at high-resolution distinguishable from) the vinyl radical ground state, consistent with a CH(2) symmetric stretch hot band built on one or more quanta of excitation in a low frequency vibration. The observed CH(2) symmetric stretch bands are in excellent agreement with anharmonically scaled high level density functional theory (DFT) calculations and redshifted considerably from previous low resolution assignments. Of particular dynamical interest, Boltzmann analysis indicates that the pair of 0(+) and 0(-) tunneling bands exhibits 1:1 nuclear spin statistics for K(a)=even:odd states. This differs from the expected 3:1 ratio for feasible exchange of the two methylenic H atoms but is consistent with a 4:4 ratio predicted for interchange between all three H atoms. This suggests the novel dynamical possibility of large amplitude "roaming" of all three H atoms in vinyl radical, promoted by high internal vibrational excitation arising from dissociative electron attachment in the discharge.

摘要

报道了射流冷却的乙烯基自由基在C-H伸缩振动区域的首个高分辨率红外光谱。对A约化沃森非对称陀螺哈密顿量进行详细的光谱归属和最小二乘法拟合,得到了三个A类谱带的转动常数和振动起源,这些谱带被归属为对称CH₂伸缩振动的单量子激发。如Kanamori等人[《化学物理杂志》92, 197 (1990)]先前的中红外CH₂摇摆研究以及Tanaka等人[《化学物理杂志》120, 3604 (2004)]的毫米波转动-隧穿研究所预测的组合差严格证实,观测到的其中两个谱带明确来自基态乙烯基自由基。这两个谱带反映了在14K狭缝射流膨胀温度下填充的乙烯基自由基对称(0(+))和反对称(0(-))隧穿能级的跃迁。较低-较低(0(+)<--0(+))和较高-较高(0(-)<--0(-))跃迁的谱带起源分别出现在2901.8603(7)和2901.9319(4) cm⁻¹处,这表明隧穿分裂增加,因此在CH₂对称伸缩激发时有效隧穿势垒降低。起源于2897.2264(3) cm⁻¹的第三个A类谱带的转动常数与乙烯基自由基基态非常接近(但在高分辨率下可区分),这与基于低频振动中一个或多个激发量子构建的CH₂对称伸缩热谱带一致。观测到的CH₂对称伸缩谱带与非谐标度的高水平密度泛函理论(DFT)计算结果非常吻合,并且与先前的低分辨率归属相比有相当大的红移。特别具有动力学意义的是,玻尔兹曼分析表明,对于K(a)=偶数:奇数态,0(+)和0(-)隧穿谱带对呈现1:1的核自旋统计。这与两个亚甲基H原子可行交换的预期3:1比例不同,但与所有三个H原子之间交换预测的4:4比例一致。这表明在放电中由离解电子附着产生的高内部振动激发促进了乙烯基自由基中所有三个H原子进行大幅度“漫游”的新动力学可能性。

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